...
首页> 外文期刊>Waste Management >Assessment of municipal solid waste settlement models based on field-scale data analysis
【24h】

Assessment of municipal solid waste settlement models based on field-scale data analysis

机译:基于现场规模数据分析的城市固体废物沉降模型评估

获取原文
获取原文并翻译 | 示例
           

摘要

An evaluation of municipal solid waste (MSW) settlement model performance and applicability was conducted based on analysis of two field-scale datasets: (1) Yolo and (2) Deer Track Bioreactor Experiment (DTBE). Twelve MSW settlement models were considered that included a range of compression behavior (i.e., immediate compression, mechanical creep, and biocompression) and range of total (2-22) and optimized (2-7) model parameters. A multi-layer immediate settlement analysis developed for Yolo provides a framework to estimate initial waste thickness and waste thickness at the end-of-immediate compression. Model application to the Yolo test cells (conventional and bioreactor landfills) via least squares optimization yielded high coefficient of determinations for all settlement models (R~2 > 0.83). However, empirical models (i.e., power creep, logarithmic, and hyperbolic models) are not recommended for use in MSW settlement modeling due to potential non-representative long-term MSW behavior, limited physical significance of model parameters, and required settlement data for model parameterization. Settlement models that combine mechanical creep and biocompression into a single mathematical function constrain time-dependent settlement to a single process with finite magnitude, which limits model applicability. Overall, all models evaluated that couple multiple compression processes (immediate, creep, and biocompression) provided accurate representations of both Yolo and DTBE datasets. A model presented in Gourc et al. (2010) included the lowest number of total and optimized model parameters and yielded high statistical performance for all model applications (R~2 > 0.97).
机译:基于两个现场规模的数据集:(1)Yolo和(2)鹿径生物反应器实验(DTBE),对城市固体废物(MSW)沉降模型的性能和适用性进行了评估。考虑了十二个城市固体废弃物沉降模型,其中包括一定范围的压缩行为(即立即压缩,机械蠕变和生物压缩)以及总范围(2-22)和优化的(2-7)模型参数。为Yolo开发的多层立即沉降分析提供了一个框架,用于估算初始压缩后的初始废物厚度和废物厚度。通过最小二乘法优化将模型应用于Yolo测试单元(常规和生物反应器垃圾填埋场)对于所有沉降模型均具有较高的测定系数(R〜2> 0.83)。但是,由于潜在的非代表性长期MSW行为,模型参数的物理重要性有限以及模型所需的沉降数据,不建议在MSW沉降建模中使用经验模型(即幂蠕变,对数和双曲线模型)参数化。将机械蠕变和生物压缩结合到单个数学函数中的沉降模型将时间相关的沉降约束到单个过程,且幅度有限,这限制了模型的适用性。总体而言,评估的所有模型都将多个压缩过程(即时,蠕变和生物压缩)耦合在一起,可以准确表示Yolo和DTBE数据集。 Gourc等人提出的模型。 (2010年)包括了总数最少的模型参数和优化的模型参数,并且在所有模型应用中均具有较高的统计性能(R〜2> 0.97)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号